PubMed HealthSearch

Biomedical subjects

D A Lewis

Publications and source records attributed to D A Lewis.

At least 19 recordsLinked to original sources

Cholecystokinin- and dopamine-containing mesencephalic neurons provide distinct projections to monkey prefrontal cortex.

Retrograde transport and immunohistochemical techniques were utilized to determine if cholecystokinin (CCK)-containing neurons of the primate ventral mesencephalon project to prefrontal cortex, and to examine what relation the CCK innervation of prefrontal cortex bears to the dopaminergic projection to this region. Following injections of Fast blue into monkey prefrontal cortex, retrogradely labeled, CCK-positive neurons were observed predominantly in rostromedial portions of the ventral mesencephalon; these CCK-containing projection neurons were not immunoreactive for tyrosine hydroxylase. Furthermore, dual-labeling studies in the prefrontal cortex revealed that CCK and tyrosine hydroxylase were present in separate populations of axons. These results demonstrate that the CCK innervation of monkey prefrontal cortex arises from both intrinsic and extrinsic sources; in contrast to the rat, the extrinsic CCK innervation of monkey prefrontal cortex is distinct from the dopaminergic mesocortical projection.

Animals

Heterogeneity of layer II neurons in human entorhinal cortex.

Abnormalities in the layer II neurons of human entorhinal cortex have been implicated in the pathophysiology of Alzheimer's disease and schizophrenia. The reported abnormalities are not homogeneously distributed throughout the entorhinal cortex, suggesting that layer II of entorhinal cortex may contain different subpopulations of neurons, each with a different susceptibility to pathological mechanisms. In order to investigate the possible heterogeneity of neurons in layer II of human entorhinal cortex, we first identified distinct subdivisions of human entorhinal cortex by adapting the cytoarchitectonic criteria for subdivisions of monkey entorhinal cortex described by Amaral et al. (J Comp Neurol 264:326, 1987). The morphology and regional distribution of distinct subpopulations of human layer II neurons were determined through the use of immunohistochemical techniques. Multipolar, stellate, and modified pyramidal neurons in the characteristic cell clusters or islands of layer II were immunoreactive for nonphosphorylated neurofilament proteins. The intensity of immunoreactivity for the nonphosphorylated neurofilament proteins gradually increased along the rostrocaudal axis of entorhinal cortex and was primarily due to a similar gradient in the density of labeled neurons per island. The calcium-binding protein calbindin D-28K was found in both pyramidal and nonpyramidal neurons in layers II and superficial III. The distribution of calbindin-immunoreactive neurons also depended upon the region of entorhinal cortex. In rostral entorhinal cortex, labeled neurons were scattered throughout the superficial layers, whereas in caudal entorhinal cortex, distinctive patches of small calbindin-immunoreactive neurons were found among the layer II islands. Another calcium-binding protein, parvalbumin, was present in nonpyramidal neurons in layers II and III that were distinct from those containing calbindin. The regional distribution of parvalbumin-positive neurons was very similar to that of the neurofilament immunoreactive neurons; in rostral entorhinal cortex very few parvalbumin-labeled neurons were present but their frequency gradually increased in the caudal direction. In addition, punctate parvalbumin immunoreactivity was frequently encountered in the location of the nonphosphorylated neurofilament protein-positive layer II islands. These findings demonstrate that layer II of human entorhinal cortex contains distinct subpopulations of neurons, that the relative density of each subpopulation differs across cytoarchitectonic regions, and that the patterns of distribution of these subpopulations are in some cases similar and in other cases complementary. This heterogeneity in the organization of layer II of human entorhinal cortex has important implications for the study of some neuropsychiatric disorders.

Adult

The catecholaminergic innervation of primate prefrontal cortex.

This paper reviews recent studies indicating that the marked expansion and differentiation of the prefrontal cortex in primates is associated with an increase in the complexity of both the regional density and laminar distribution of catecholaminergic afferents. The innervation patterns of these systems in monkey prefrontal cortex appear to accurately predict those in human prefrontal cortex, suggesting that studies in non-human primates may be reasonably used to generate hypotheses about the nature of involvement of these systems in disorders such as schizophrenia. In addition, the distinctive developmental pattern of the dopaminergic innervation of primate prefrontal cortex and the possibility of an intrinsic catecholaminergic innervation of primate prefrontal cortex may reveal new avenues of investigation into the roles of prefrontal catecholamines in both normal and pathological states.

Afferent Pathways

Differential distribution of parvalbumin-immunoreactive pericellular clusters of terminal boutons in developing and adult monkey neocortex.

Basket cells are GABAergic inhibitory interneurons and known regulators of pyramidal cells, the major class of excitatory neurons in neocortex. Parvalbumin (PV), a calcium binding protein, has been colocalized with GABA in cortical neurons (Celio, 1986. Science 231: 995-998) and has been reported to be present in the terminal boutons of basket neurons forming pericellular clusters in monkey neocortex (Hendry et al. 1989. Exp. Brain Res. 76: 467-472). In this study, we used immunohistochemical methods to evaluate the regional and laminar distributions of PV-immunoreactive (PV-IR) pericellular clusters of terminal boutons in the neocortex of neonatal, infant, adolescent, and adult rhesus monkeys. PV-IR pericellular clusters were composed of labeled terminal boutons that outlined the somata and proximal dendrites of large pyramidal neurons in layers III and V of primary motor cortex, layers V and VI of primary visual cortex, and layer V of visual association cortex (area 18). This laminar pattern was present in neonatal animals and did not change with age in motor cortex. However, in the visual regions of adolescent and adult animals, such PV-IR structures were not detected. PV-positive pericellular clusters were not observed in the prefrontal cortex at any age. The pattern of distribution of PV-containing pericellular clusters paralleled that of a subpopulation of pyramidal neurons containing nonphosphorylated neurofilament proteins (NFP); double labeling studies confirmed that a subgroup of NFP-positive pyramidal neurons were the targets of PV-IR pericellular clusters. The distribution of PV-IR pericellular clusters was compared to that of PV-IR terminal boutons of another class of interneurons, the chandelier cells. Terminal boutons of chandelier neuron axons align in vertical rod-like structures known as cartridges. Subpopulations of chandelier axon cartridges have been previously shown to be PV-IR and their distribution in visual and prefrontal cortices has been described (DeFelipe et al. 1989. Brain Res. 503: 49-54; Lewis and Lund. 1990. J. Comp. Neurol. 293: 599-615). These two types of structures composed of PV-IR terminal boutons tended to be present in different laminae in all regions and ages examined, except in layer III of primary motor cortex where both PV-IR pericellular clusters and chandelier cartridges were found. These findings indicate that in monkey neocortex PV immunoreactivity is present in pericellular clusters of terminal boutons that are likely to arise from basket cells.(ABSTRACT TRUNCATED AT 400 WORDS)

Aging

Postnatal development of parvalbumin immunoreactivity in axon terminals of basket and chandelier neurons in monkey neocortex.

1. Two classes of GABAergic inhibitory interneurons, chandelier and basket cells, are known regulators of pyramidal neurons. Parvalbumin (PV) a calcium binding protein, has been shown to be a marker for axon terminals of subpopulations of these interneurons. 2. Immunohistochemical methods were used in this study to examine changes in the distribution of PV-immunoreactive (IR) chandelier and basket axon terminals during postnatal development of monkey neocortex. 3. Our results indicate a differential effect of postnatal development on PV-IR axon terminals of chandelier and basket neurons that is region-specific. 4. The differential regional, laminar and developmental pattern of PV-IR axon terminals of chandelier and basket cells may provide insight into the functional role of these classes of inhibitory neurons in primate neocortex.

Aging

Pharmacokinetics and metabolism of FCE 22101 following its administration as the oral pro-drug FCE 22891.

Ten healthy male volunteers who had previously received both intramuscular and intravenous doses of FCE 22101 received a single oral dose of FCE 22891, the acetoxymethyl ester and pro-drug of FCE 22101. After a lag time of 22 min, mean plasma levels of FCE 22101 rose with a T1/2 absorbance of 19 min to 2.5 mg/L at 30 min, 3.6 mg/L at 60 min and a Cmax of 4.6 mg/L at 80 min; levels then fell with a T1/2 beta of 29 min to be undetectable at 300 min. The mean area under the concentration-time curve (AUC) was 497 mg.min/L giving an absolute bioavailability for FCE 22101 of 32%. Neither FCE 22101 or its metabolites were present in any of the saliva samples collected at intervals up to 360 min after dosing. Mean urinary recoveries were FCE 22101 12% (+/- S.D. 4.6), P1 16% (+/- S.D. 9.1) and P2 3.3% (+/- S.D. 2.1). It was not possible to detect the pro-drug FCE 22891 in any of the blood or urine samples. Significant levels of the metabolite P1 were observed in blood with peak levels of 1.7 mg/L seen 130 min after dosing, 50 min later than the peak FCE 22101 levels, and giving a mean AUC of 297 mg.min/L.

Administration, Oral

Role of lipoxygenase and cytochrome P-450 in production of endothelium-derived relaxing factors in canine femoral veins.

We wished to determine whether the metabolism of arachidonic acid, through lipoxygenase and cytochrome P-450 pathways, is involved in production of endothelium-derived relaxing factor(s) (EDRFs) in canine femoral veins. Veins were removed from anesthetized dogs and cut into rings. Endothelium was deliberately removed from some rings. In separate sets of experiments, rings were incubated with either AA861 (10(-5) M) or TMK777 (10(-6) M), inhibitors of 5-lipoxygenase, nordihydroguaiaretic acid (NDGA 3 x 10(-6) M), an inhibitor of lipoxygenase or proadifen (SKF 525A, 10(-6) M), an inhibitor of cytochrome P-450. In addition, some rings were incubated with a combination of indomethacin (10(-5) M) and NG-monomethyl-L-arginine (L-NMMA 10(-4) M) or, where appropriate, a solvent control. Concentration-response curves were obtained for acetylcholine, adenosine diphosphate, thrombin, A23187, and nitric oxide in rings contracted with a submaximal concentration of prostaglandin F2 alpha. AA861 and TMK777 did not alter endothelium-dependent relaxations to the agonists, whether with or without indomethacin and L-NMMA. However, indomethacin plus L-NMMA reduced endothelium-dependent relaxations to thrombin. These results suggest that metabolism of arachidonic acid, through lipoxygenase and cytochrome P-450 pathways, does not produce an EDRF in veins. However, thrombin receptor-activated relaxations are mediated in part by products of the cyclooxygenase pathway and nitric oxide.

Animals

The use of albumin microspheres in the treatment of carrageenan-induced inflammation in the rat.

Free hydrocortisone, hydrocortisone incorporated into microspheres and empty microspheres have been administered orally to rats with carrageenan-induced hindpaw inflammation. Hydrocortisone administered in particles was effective at a lower dose than free steroid in reducing inflammation. Inflammatory exudates were able to release steroid from the microspheres by proteolytic degradation.

Animals

Dopamine and the neural circuitry of primate prefrontal cortex: implications for schizophrenia research.

Dopaminergic systems have been implicated in the pathophysiology of schizophrenia; the prefrontal cortex may be a site of dysfunction in this disorder. Until recently, however, relatively little was known about the organization of dopaminergic afferents, or the relationship of those axons to other elements of neural circuitry in the expanded and highly differentiated prefrontal cortex of primates. In this paper we review recent studies demonstrating that monkey prefrontal cortex is innervated by dopaminergic axons in a highly specific regional and laminar fashion. These findings are considered in the context of the organization of other neural systems in monkey prefrontal cortex and with regard to the extent to which they represent the organization of human prefrontal cortex. The resulting model of prefrontal cortical circuitry is then discussed in terms of the ways in which that circuitry might be disrupted in schizophrenia.

Animals

Ventilator management of severe asthma.

The Scientific Board of the California Medical Association presents the following inventory of items of progress in internal medicine. Each item, in the judgment of a panel of knowledgeable physicians, has recently become reasonably firmly established, both as to scientific fact and important clinical significance. The items are presented in simple epitome, and an authoritative reference, both to the item itself and to the subject as a whole, is generally given for those who may be unfamiliar with a particular item. The purpose is to assist busy practitioners, students, researchers, or scholars to stay abreast of these items of progress in internal medicine that have recently achieved a substantial degree of authoritative acceptance, whether in their own field of special interest or another.The items of progress listed below were selected by the Advisory Panel to the Section on Internal Medicine of the California Medical Association, and the summaries were prepared under its direction.

Asthma

Differential laminar distribution of tyrosine hydroxylase-immunoreactive axons in infant and adult monkey prefrontal cortex.

Immunohistochemical techniques were used to evaluate the laminar distribution of tyrosine hydroxylase (TH)-immunoreactive axons in area 9 of infant and adult rhesus monkey prefrontal cortex. In neonatal animals, TH-positive axons had a bilaminar location in the superficial and deep cortical layers, whereas in the adults, labeled fibers were more evenly distributed across all layers. These differences reflected the fact that fiber density in the superficial layers was over 35% greater in neonates than in adults, but in the middle cortical layers, fiber density was over 100% greater in adults than in neonates. The most striking changes in fiber distribution appeared to occur during the first few months of life. These findings may reveal differences in the role of dopamine in the regulation of prefrontal cortical function in neonatal and adult monkeys.

Aging

A comparative analysis of the distribution of prosomatostatin-derived peptides in human and monkey neocortex.

Comparative analyses were made of the immunohistochemical and biochemical distributions of three prosomatostatin-derived peptides (PSDP) in human, perfused monkey, and unperfused monkey neocortex. The PSDP we examined were the tetradecapeptide somatostatin 14 (SS14); the N-terminal extension of this peptide, somatostatin 28 (SS28); and somatostatin 28(1-12) (SS28(1-12)). In immunohistochemical experiments, numerous SS28-immunoreactive perikarya were located in both superficial and deep layers of perfused monkey cortex, but none were present in the cerebral cortex from unperfused monkey or autopsied human brains. In contrast, the number of SS28(1-12)-immunoreactive neurons was five times greater in the superficial cortical layers of unperfused monkey than of perfused monkey brain. Moreover, unperfused monkey and human cortex contained notably more SS14-immunoreactive processes than perfused monkey cortex. These data suggested that SS28 may have been converted into SS14 and SS28(1-12) in unperfused tissue during the post-mortem interval. This hypothesis was examined biochemically by measuring the levels of immunoreactivity of SS14, SS28, and SS28(1-12) in samples of unperfused monkey cortex frozen at different time intervals after removal from the brain. Samples frozen 10 minutes or longer after removal contained only 10-20% the level of SS28 immunoreactivity measured in samples frozen immediately or 1 minute after removal. The levels of SS14 and SS28(1-12) immunoreactivity did not demonstrate such reductions, and may instead have increased at early time points. To further characterize post-mortem effects on PSDP and to explore for species differences, we performed a detailed comparison of the regional, laminar, and cellular distribution of SS28(1-12) immunoreactivity under the three conditions. A progressive loss of immunoreactivity, particularly in radial fibers, was found at increasing post-mortem intervals in unperfused monkey neocortex, indicating that differences in density and distribution of immunoreactive fibers between human and perfused monkey may result from post-mortem peptide degradation in unperfused tissue. In contrast, the larger size of SS28(1-12)-immunoreactive white matter neurons in humans as compared to monkeys appeared partially due to a post-mortem effect but also reflected a species difference. In addition, the density of white matter neurons was found to be significantly greater in human than in perfused or unperfused monkey. These data indicate that any study of human autopsy material must be assessed in light of possible post-mortem effects.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

Prospective study of postpartum blues. Biologic and psychosocial factors.

Potential biologic and psychosocial causative factors for the postpartum blues were tested in a prospective study of 182 women followed up from the second trimester of pregnancy until postpartum week 9. Personal and family history of depression, depressive symptoms, stressful life events, and social adjustment were all assessed during the second trimester. Levels of progesterone, prolactin, estradiol, free and total estriol, and free and total cortisol were measured on several occasions during late pregnancy and early puerperium. Obstetric and child-care stressors and the postpartum blues were assessed after delivery. Predictors of the postpartum blues were personal and family history of depression, social adjustment, stressful life events, and levels of free and total estriol. Our results support the hypothesis that the postpartum blues is within the spectrum of affective disorders.

Adult

Distribution of choline acetyltransferase-immunoreactive axons in monkey frontal cortex.

Cholinergic neurons of the nucleus basalis of Meynert project to numerous regions of the cerebral cortex. However, little is known about the regional and laminar distributions of cholinergic axons in monkey frontal cortex. In this study, immunohistochemical techniques were used to identify axons that were immunoreactive for choline acetyltransferase, the enzyme that catalyses the synthesis of acetylcholine, in the frontal cortex of cynomolgus monkeys. Motor cortex contained the greatest density of labeled fibers: the density of labeled fibers was lower in premotor and anterior cingulate cortices and lower still in the association regions of prefrontal cortex. On a laminar basis, choline acetyltransferase-immunoreactive axons were most dense in layer I to superficial layer III. Layer V also contained a distinct band of labeled fibers that was particularly prominent in the agranular regions of frontal cortex. The density of labeled fibers was much lower in the deep portion of layer III to layer IV and in layer VI. These findings demonstrate a specific and regionally distinctive cholinergic innervation of monkey frontal cortex that may reveal the anatomical basis for the influence of acetylcholine on the diverse functions of primate frontal cortex.

Animals

Controlled prospective study of postpartum mood disorders: psychological, environmental, and hormonal variables.

Demographic, psychiatric, social, cognitive, and life stress variables were used to determine the etiology of depression in childbearing (CB; n = 182) and nonchildbearing (NCB; n = 179) women. Hormonal variables in postpartum depression were also evaluated. In the CB group predictors of depression diagnosis were previous depression, depression during pregnancy, and a Vulnerability (V) x Life Stress (LS) interaction; predictors of depressive symptomatology were previous depression, depressive symptoms during pregnancy, life events, and V x LS. Only estradiol was associated with postpartum depression diagnosis. In the NCB group V X LS was the only predictor of depression diagnosis; depressive symptoms during pregnancy and life events were predictors of depressive symptomatology. Previous findings about depression vulnerability were replicated. The significant V x LS interactions support the vulnerability-stress model of postpartum depression.

Adult

The effect of the uptake of particles on the chemotaxis of polymorphonuclear leucocytes in-vitro.

The relationship between the phagocytic uptake of latex microspheres (1.1 microns diam.) and the mobility of rat polymorphonuclear leucocytes (PMNLs) has been investigated in-vitro. The movement of PMNLs was found to be independent of the uptake of particles but about half of the PMNLs were not receptive to the chemo-attractant N-formylmethionyleucylphenylalanine. However, the uptake of particles was greater when particle/cell ratios were high and the greatest number of particles were carried into a cellulose nitrate filter by chemotaxis at the highest particle/cell ratio of 30:1.

Animals

The HXT1 gene product of Saccharomyces cerevisiae is a new member of the family of hexose transporters.

Two novel genes affecting hexose transport in the yeast Saccharomyces cerevisiae have been identified. The gene HXT1 (hexose transport), isolated from plasmid pSC7, was sequenced and found to encode a hydrophobic protein which is highly homologous to the large family of sugar transporter proteins from eucaryotes and procaryotes. Multicopy expression of the HXT1 gene restored high-affinity glucose transport to the snf3 mutant, which is deficient in a significant proportion of high-affinity glucose transport. HXT1 was unable to complement the snf3 growth defect in low copy number. The HXT1 protein was found to contain 12 putative membrane-spanning domains with a central hydrophilic domain and hydrophilic N- and C-terminal domains. The HXT1 protein is 69% identical to GAL2 and 66% identical to HXT2, and all three proteins were found to have a putative leucine zipper motif at a consensus location in membrane-spanning domain 2. Disruption of the HXT1 gene resulted in loss of a portion of high-affinity glucose and mannose transport, and wild-type levels of transport required both the HXT1 and SNF3 genes. Unexpectedly, expression of beta-galactosidase activity by using a fusion of the lacZ gene to the HXT1 promoter in a multicopy plasmid was maximal during lag and early exponential phases of growth, decreasing approximately 100-fold upon further entry into exponential growth. Deletion analysis of pSC7 revealed the presence of another gene (called ORF2) capable of suppressing the snf3 null mutant phenotype by restoring high-affinity glucose transport and increased low-affinity transport.

Amino Acid Sequence